AN INNOVATION IN SEALING ELEMENTS.

TR202418499A2Pending Publication Date: 2026-06-22POELSAN PLASTIK SANAYI VE TICARET ANONIM SIRKETI
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Patent Information

Application Number
TR202418499
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2026-06-22
Patent Text Reader

Abstract

The invention relates to an innovation that enhances sealing performance and prevents part loss during assembly, through a monolithic sealing element consisting of a gasket and a gasket holder.
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Description

1 TARIFF AN INNOVATION IN SEALING ELEMENTS. Technical Area The invention is a monolithic sealing element consisting of a gasket and a gasket holder. improves sealing performance and prevents part loss during assembly. It is related to an innovation. Previous Technique In current technology, devices are designed to prevent the passage of liquids or gases. Sealing systems, fasteners and components integrated into these elements It consists of sealing elements. The main function of sealing elements is: the fluids within the system are kept under control without causing unwanted leaks. The aim is to ensure that these systems are maintained. For these systems to function correctly and reliably, manufacturing characteristics of the components used, material durability and assembly It is directly related to the accuracy of the processes. Fasteners are generally those where sealing elements are integrated and These are the components that hold the system together. These elements can be liquid or gas. at the junctions of pipelines, valves or similar systems through which the flow passes It is located there. The correct placement of the sealing elements ensures a secure connection. directly affecting the functionality of its components and the overall performance of the system. It is a critical element. Gaskets and gasket retainers, commonly used in sealing systems, are... It is among the basic components of the elements. In current technology, gaskets and The gasket holder is manufactured separately and assembled manually during installation. They are combined. The gasket is made of elastic material and performs a sealing function. It is a component that fulfills its purpose. It is usually made of thermoplastic elastomer (TPE) or rubber. Gaskets made from flexible and durable materials such as these can withstand high pressure and temperature. It is designed to withstand changes. The gasket attaches to the fastener. When installed, it provides a leak-proof seal by preventing the passage of liquids or gases. The gasket retainer ensures that the gasket is secured in the correct position within the system. It is a support element that provides a seal. In current technical applications, the gasket retainer generally independent of hard plastic, metal or similar durable materials 2 It is manufactured as a single unit and the gasket is manually applied during assembly. It is connected. This design allows multiple components to work together harmoniously. This requires and brings with it a number of challenges in the assembly process. During assembly, the gasket and gasket holder must be handled separately, as these parts... ensuring correct alignment and seamless integration into the fastener. This makes things more difficult. This situation leads to workmanship errors and consequently to leaks. This can lead to problems, especially during assembly. Alignment errors, the gasket and gasket holder are misaligned with each other and the fastener. This can reduce sealing performance by preventing the seal from fitting properly. Furthermore, the fact that the gasket and gasket holder are produced separately simplifies the production process. This makes it complex and costly. Both parts need to be used independently. Molding requires these parts to be brought together before assembly. This The process leads to a waste of time and negatively affects production efficiency. This has an impact. In addition, ensuring the parts fit together during assembly is crucial. This creates a need for additional manpower. In conclusion, current technical practices, the production of sealing elements, and This presents a number of challenges in its assembly, particularly the separation of the gasket and the gasket holder. separate production, to avoid alignment and positioning errors that may occur during assembly This leads to increased production costs and impaired sealing performance. This can have negative effects. For these reasons, the current technique used... The need to improve methods and offer more efficient solutions has emerged. It is emerging. Purpose of the Invention The primary purpose of the invention is to improve the sealing and seal retaining properties in fittings. It produces monolithic sealing elements by improving sealing performance. Another objective of the invention is to improve the sealing elements in fasteners. The purpose is to prevent it from getting lost during assembly. Another aim of the invention is to produce a monolithic sealing element, thereby creating a connection. The purpose is to facilitate assembly of the parts. Another aim of the invention is to quickly produce the components of connecting parts. 3 Another purpose of the invention is to facilitate the assembly of sealing elements used in the system. by simplifying the process, production efficiency and sealing performance to increase. Another aim of the invention is to produce the gasket and gasket holder as a single, integrated unit. by eliminating possible alignment errors during assembly and ensuring the system The goal is to ensure it works in the correct position. Detailed Description of the Invention The subject of the invention is an invention concerning an innovation in gaskets and gasket retaining elements. The figures are as follows: Figure 1: Cross-sectional view of the sealing element assembly. Figure 2: Perspective view of the sealing element. Figure 3 - View of the sealing element inside the fitting. Figure 4 - Cross-section of the sealing element inside the connection piece. appearance Figure 5 - Drawings of the gasket and gasket holder from the previous technique. The elements shown in the figures above are numbered as follows: These numberings will be used throughout the rest of the specification: A Sealing element 1. Gasket holder 2. Gasket 3. Connecting piece In this detailed description, the sealing element (A) that is the subject of the invention is preferred. their structures are solely for the purpose of better understanding the subject. It is explained. To fulfill the purposes described in the section on the purpose of the invention; connection Used in the elements, a sealing element (A) and its feature is; gasket (2) and The gasket holder (1) components are produced in a monolithic structure by injection molding. It contains sealing element (A). 4 As shown in Figure 1, the sealing element (A) consists of the gasket holder (1) and the gasket. (2) occurs. The gasket holder is concentric with (2). (1) is connected to the gasket (2). Sealing element (A) is the connecting piece. (3) is positioned inside. Thus, the assembly of the sealing element (A) It is being completed. The gasket holder (2) ensures the correct position of the sealing element within the system. It is a component that ensures its protection and stability. As seen in Figure 5. In the current technology, this part is produced as a separate element, and the gasket... (1) was placed in the connecting piece during assembly. However, this In this invention, the gasket holder (2) is manufactured as a single piece together with the gasket (1). The gasket (3) is an elastic element that performs the sealing function of the system. Manufactured from thermoplastic elastomer (TPE) or rubber material, this part offers high-performance protection. It is resistant to pressure, temperature changes and fluid movements. Gasket (1) , When the connector (1) is placed inside, it prevents the passage of liquid or gas. It provides a leak-proof seal. The production method is carried out using injection molding technique. This in the process, TPE (thermoplastic elastomer) or rubber material, specifically The inserts are injected one on top of the other in a designed injection mold. The mold, to form the gasket (2) and gasket holder (1) elements together It is being designed. During the molding process, the molten material is injected with high precision. The material is filled into the mold cavities by the machine. After cooling, a monolithic sealing element (A) is obtained. The production process, completed in a single step, is faster compared to previous methods. is happening. The monolithic sealing element (A) produced by this method is attached to the connecting piece (3) Easily integrated, it offers high performance both in the production process and during use. It offers performance.

Claims

REQUESTS 1. A sealing element (A) used in fasteners, feature;  injection molding of gasket (2) and gasket holder (1) components Sealing element (A) produced in a monolithic structure, It includes.

2. Sealing element (A) conforming to claim 1, its characteristic is ease of assembly. It provides high sealing performance along with ensuring durability.